jointly supported by the National Natural Science Foundation of China (Grant Nos. 41130103, 41421004 and 41405087)
Regional climate simulation can generally be improved by using an RCM nested within a coarser-resolution GCM.However, whether or not it can also be improved by the direct use of a state-of-the-art GCM with very fine r...
supported by the Public Science and Technology Research Funds Projects of Ocean(No.201205007);the National Natural Science Foundation of China(Grant Nos.41421004 and 41130103);the Special Fund for Public Welfare Industry(Meteorology)(Grant No.GYHY2013-06026);the Nord Forsk-funded project GREENICE(No.61841):Impacts of Sea-Ice and Snow-Cover Changes on Climate,Green Growth,and Society
Observed winter(December–February)surface air temperature over East Asia(0°–60°N,100–140°E)(TEA)shows non-uniform variation during 1979–2013,with cooling and weak warming north and south of40°N.To understand t...
supported by the National Natural Foundation of China(Grant Nos.41421004 and 41130103);the Special Fund for Public Welfare Industry(Meteorology)(Grant No.GYHY201306026)
The connection of the Arctic Oscillation(AO)with the frequency of temperature extremes over East Asia during boreal winter has been documented by many studies.This study describes an asymmetry in the relationship betw...
supported by the National Natural Science Foundation of China (Grant Nos. 41210007 and 41130103)
We evaluated the potential impact of future climate change on spring maize and single-crop rice in northeastern China (NEC) by employing climate and crop models. Based on historical data, diurnal temperature change ...
supported by the National Natural Science Foundation of China (Grant Nos. 41421004 and 41130103);the Special Fund for Public Welfare Industry (Mete orology) (Grant No. GYHY201306026)
This study investigated the connection between the Australian summer monsoon(ASM) and summer precipitation over central China. It was found that,following a weaker-than-normal ASM, the East Asian summer monsoon and we...
supported by the National Natural Science Foundation of China (Grant No. 41130103);the special Fund for Public Welfare Industry (Meteorology) (Grant No. GYHY201306026);the National Natural Science Foundation for Distinguished Young Scientists of China (Grant No. 41325018);the National Basic Research Program of China (Grant No. 2010CB951901)
To study the prediction of the anomalous precipitation and general circulation for the summer(June–July–August) of1998, the Community Climate System Model Version 4.0(CCSM4.0) integrations were used to drive ver...
supported by National Natural Science Foundation of China(Grant No.41130103);Special Fund for Public Welfare Industry(Meteorology)(Grant No.GYHY201306026)
A global climate prediction system (PCCSM4) was developed based on the Community Climate System Model, version 4.0, developed by the National Center for Atmospheric Research (NCAR), and an initialization scheme wa...
supported by the National Natural Science Foundation of China (41130103 and 41210007)
The near-surface freeze/thaw cycle in cold regions plays a major role in the surface energy budget,hydrological activity,and terrestrial ecosystems.In this study,the Community Land Model,Version 4 and a suite of high-...